EP3103497B1 - Dispositif de nébulisation et nébuliseur - Google Patents

Dispositif de nébulisation et nébuliseur Download PDF

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Publication number
EP3103497B1
EP3103497B1 EP16163291.4A EP16163291A EP3103497B1 EP 3103497 B1 EP3103497 B1 EP 3103497B1 EP 16163291 A EP16163291 A EP 16163291A EP 3103497 B1 EP3103497 B1 EP 3103497B1
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EP
European Patent Office
Prior art keywords
opening
nebulizing
recited
waterproof gasket
disposed
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP16163291.4A
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German (de)
English (en)
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EP3103497A1 (fr
Inventor
Kuo-Liang Lee
Chun-Kai Chuang
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Delta Electronics Inc
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Delta Electronics Inc
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Filing date
Publication date
Priority claimed from TW104219725U external-priority patent/TWM536948U/zh
Application filed by Delta Electronics Inc filed Critical Delta Electronics Inc
Publication of EP3103497A1 publication Critical patent/EP3103497A1/fr
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Publication of EP3103497B1 publication Critical patent/EP3103497B1/fr
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M11/00Sprayers or atomisers specially adapted for therapeutic purposes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B17/00Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups
    • B05B17/04Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods
    • B05B17/06Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods using ultrasonic or other kinds of vibrations
    • B05B17/0607Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods using ultrasonic or other kinds of vibrations generated by electrical means, e.g. piezoelectric transducers
    • B05B17/0638Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods using ultrasonic or other kinds of vibrations generated by electrical means, e.g. piezoelectric transducers spray being produced by discharging the liquid or other fluent material through a plate comprising a plurality of orifices
    • B05B17/0646Vibrating plates, i.e. plates being directly subjected to the vibrations, e.g. having a piezoelectric transducer attached thereto

Definitions

  • This invention relates to a nebulizing device and a nebulizer.
  • nebulizers namely sprayers
  • the medicated liquid, lotion or essence, etc. is nebulized into smaller vapor molecules by the nebulizing devices so as to easily enter into a human body.
  • they can be applied to health care or treatment of respiratory diseases, or can make skin absorb the medicated liquid or lotion fast or intensify the aroma, etc.
  • the nebulizer can transform the liquid medicament into nebulization or nebulized drops and spray them into the mouth of the patient, so that the nebulized drops can be absorbed into the bronchus and lung of the patient for the treatment or remission of the respiratory diseases.
  • the common mesh-type nebulizer utilizes the micropump technology, which uses the collocation of the piezoelectric device and the nozzle plate, as the nebulization mechanism, so that the liquid medicament can be transformed into the nebulized drops and sprayed out.
  • a nebulizing device comprises a medicament storage module, a nebulizing unit and a first waterproof gasket.
  • the medicament storage module includes a bottom wall, a tubular sidewall and a coupling part.
  • the tubular sidewall is connected to the circumference of the bottom wall.
  • the tubular sidewall and the bottom wall form an accommodating recess having an upper opening to accommodate a liquid medicament.
  • the tubular sidewall comprises an outlet, and the bottom wall is extended to the outlet.
  • the coupling part is connected to an outer surface of the tubular sidewall and aligned with the outlet, and includes an extension wall and a first recess.
  • the nebulizing unit is disposed within the first recess to transform the liquid medicament outputted by the outlet into a plurality of nebulized drops and spray them out.
  • the first waterproof gasket is disposed within the first recess and located on a side of the nebulizing unit farther from the outlet, and includes a first opening, a second opening and an annular wall structure.
  • the first opening is disposed adjacent to the nebulizing unit.
  • the second opening is disposed opposite to the first opening and located on a side of the first opening farther from the nebulizing unit.
  • the size of the second opening is greater than that of the first opening.
  • the annular wall structure is connected to the first opening and the second opening.
  • the annular wall structure is a concave surface, a flat surface, a jagged surface or a ladder-shaped surface.
  • the nebulizing device further comprises a guiding tube detachably coupled with the coupling part of the medicament storage module.
  • the extension wall of the coupling part comprises an annular groove disposed on the extension wall and facing an end surface of the guiding tube.
  • the nebulizing device further comprises a second waterproof gasket disposed within the annular groove and extended outwards to cover the end surface of the guiding tube.
  • a nebulizer includes a nebulizing device and a nebulization driving device.
  • the nebulizing device includes a medicament storage module, a nebulizing unit and a first waterproof gasket.
  • the medicament storage module includes a bottom wall, a tubular sidewall and a coupling part.
  • the tubular sidewall is connected to the circumference of the bottom wall.
  • the tubular sidewall and the bottom wall form an accommodating recess having an upper opening to accommodate a liquid medicament.
  • the tubular sidewall comprises an outlet, and the bottom wall is extended to the outlet.
  • the coupling part is connected to an outer surface of the tubular sidewall and aligned with the outlet, and includes an extension wall and a first recess.
  • the nebulizing unit is disposed within the first recess to transform the liquid medicament outputted by the outlet into a plurality of nebulized drops and spray them out.
  • the first waterproof gasket is disposed within the first recess and located on a side of the nebulizing unit farther from the outlet, and includes a first opening, a second opening and an annular wall structure.
  • the first opening is disposed adjacent to the nebulizing unit.
  • the second opening is disposed opposite to the first opening and located on a side of the first opening farther from the nebulizing unit.
  • the size of the second opening is greater than that of the first opening.
  • the annular wall structure is connected to the first opening and the second opening.
  • the nebulization driving device connects to and drives the nebulizing unit to spray the nebulized drops.
  • the annular wall structure is a concave surface, a flat surface, a jagged surface or a ladder-shaped surface.
  • the nebulizing device further comprises a guiding tube detachably coupled with the coupling part of the medicament storage module.
  • the extension wall of the coupling part comprises an annular groove disposed on the extension wall and facing an end surface of the guiding tube.
  • the nebulizing device further comprises a second waterproof gasket disposed within the annular groove and extended outwards to cover the end surface of the guiding tube.
  • the size of the second opening of the first waterproof gasket is greater than that of the first opening, so that the annular wall structure is extended from the first opening toward the second opening to form a non-horizontal surface. Therefore, even if the nebulized drops are condensed into water drops after being sprayed out of the nozzle plate, the water drops will flow to the outside of the second opening instead of becoming standing water at the annular wall structure. Therefore, the nebulizing unit will not soak in the standing water containing the medicament for a long time, and the nebulizing unit may be oxidized or eroded by the medicament as little as possible so the lifespan of the nebulizing unit can be extended.
  • EP2848274 describes a nebulizer and medicament storage module.
  • FIG. 1 is a schematic exploded diagram of a nebulizing device of an embodiment of the invention
  • FIG. 2 is a schematic sectional diagram of the nebulizing device of FIG. 1
  • the nebulizing device N of this embodiment is, for example but not limited to, a mesh-type nebulizing device, and can transform or nebulize the liquid (medicament) into a plurality of nebulized drops or aerosol and spray them out, for example, with the size of 1 ⁇ m ⁇ 5 ⁇ m.
  • the medicament can be sent to the mouth of the patient and the nebulized drops can be absorbed into the bronchus and lung of the patient for the treatment or remission of the respiratory diseases.
  • the nebulizing device N is illustrated as for the medical use for example, the nebulizing device N may also be applied to the beauty use, and this invention is not limited thereto.
  • the nebulizing device N includes a storage module 1, a nebulizing unit 2 and a first waterproof gasket 3.
  • FIG. 3 is a schematic diagram of a nebulizing unit.
  • the nebulizing unit 2 is disposed on the storage module 1 and includes a piezoelectric element 21 and a nozzle plate 22.
  • the piezoelectric element 21 can act as an oscillation element to drive the oscillation of the nozzle plate 22.
  • the nozzle plate 22 includes a plurality of nozzles (not shown). The nozzle plate 22 oscillates in response to the driving of the piezoelectric element 21, and accordingly the liquid medicament can be transformed into very small nebulized drops or aerosol through the above-mentioned nozzles by the micropump principle and then sprayed out.
  • the piezoelectric element 21 can be shaped like an annular sheet and the nozzle plate 22 can be shaped like a disk.
  • the piezoelectric element 21 of this embodiment is disposed around the nozzle plate 22.
  • the first waterproof gasket 3 tightly abuts on the piezoelectric element 21.
  • the nebulizing unit 2 is used to transform the liquid medicament provided by the storage module 1 into a plurality of very small nebulized drops and then spray them out.
  • the storage module 1 approximately has a cup structure and includes a bottom wall 11, a tubular sidewall 12 and a coupling part 13.
  • the tubular sidewall 12 favorably has a circular tube shape.
  • the tubular sidewall 12 is connected to the circumference of the bottom wall 11 and can be integrally formed with the bottom wall 11.
  • the tubular sidewall 12 and the bottom wall 11 form an accommodating recess A having an upper opening O to accommodate a liquid medicament.
  • the tubular sidewall 12 has an outlet 121, and that is, the outlet 121 passes through the tubular sidewall 12 to output or supply the liquid medicament.
  • the bottom wall 11 is extended to the outlet 121.
  • the tubular sidewall 12 can be extended vertically along the normal direction of the bottom wall 11 from the circumference of the bottom wall 11.
  • the bottom wall 11 and the tubular sidewall 12 also can form an included angle therebetween, so that the bottom wall 11 is disposed obliquely, and therefore the liquid medicament can completely flow to the outlet 121 instead of being wasted.
  • the coupling part 13 is connected to an outer surface of the tubular sidewall 12 and aligned with the outlet 121.
  • the coupling part 13 is integrally formed with the tubular sidewall 12, and is extended from the outer surface of the tubular sidewall 12 and aligned with the position of the outlet 121.
  • the coupling part 13 includes an extension wall 131 and a first recess 132.
  • the extension wall 131 and the tubular sidewall 12 form the first recess 132.
  • An inner wall surface of the first recess 132 has a multi-step structure for supporting the nebulizing unit 2 so that the nozzle plate 22 of the nebulizing unit 2 can be aligned with the outlet 121.
  • the nebulizing unit 2 is disposed at the first recess 132 so as to transform the liquid medicament outputted by the outlet 121 into a plurality of nebulized drops or aerosol and spray them out.
  • FIG. 4A is a schematic diagram of the first waterproof gasket
  • FIG. 4B is a schematic sectional diagram of the first waterproof gasket of FIG. 4A
  • the first waterproof gasket 3 is disposed in the first recess 132 and on a side of the nebulizing unit 2 farther from the outlet 121.
  • the first waterproof gasket 3 includes a first opening 31, a second opening 32 and an annular wall structure 33.
  • the first opening 31 is disposed adjacent to or abuts upon the nebulizing unit 2 and on a side of the nebulizing unit 2 farther from the outlet 121.
  • the second opening 32 is disposed opposite to the first opening 31 and away from the nebulizing unit 2.
  • the annular wall structure 33 is connected to the first opening 31 and the second opening 32.
  • the annular wall structure 33 is extended from the first opening 31 toward the second opening 32 to form a non-horizontal surface.
  • the non-horizontal surface of the annular wall structure 33 may be flat and the section of the annular wall structure 33 shows a straight line from FIG. 4B .
  • the nebulizing unit 2 would not be soaked in the standing water containing the medicament for a long time so at to prevent from being oxidized or eroded by the medicament. Then, the lifespan of the nebulizing unit 2 can be extended.
  • the non-horizontal surface of the annular wall structure 33 can be a concave surface (as shown in FIG. 4C ), a ladder-shaped surface (as shown in FIG. 4D ) or a jagged surface (as shown in FIG. 4E ), and the above-mentioned effectiveness also can be achieved therefore.
  • the nebulizing device N further includes a guiding tube 4 which is detachably coupled with the coupling part 13 of the storage module 1.
  • the guiding tube 4 includes a connection portion 41, an opening 42 and a tube portion 43.
  • the connection portion 41 of the guiding tube 4 is coupled with the extension wall 131 of the coupling part 13, so that the guiding tube 4 is mounted to the coupling part 13.
  • the extension wall 131 of the coupling part 13 may tightly abut on an inner surface of the connection portion 41.
  • the opening 42 of the guiding tube 4 is correspondingly disposed at or aligned with the nozzle plate 22 of the nebulizing unit 2.
  • the tube portion 43 of the guiding tube 4 guides the plurality of nebulized drops sprayed out by the nebulizing unit 2.
  • the guiding tube 4 can be detachably connected to the storage module 1 and disposed corresponding to the nebulizing unit 2 so as to guide the plurality of nebulized drops sprayed out by the nebulizing unit 2 into the mouth of the patient.
  • an electrode assembly E can be disposed in a region formed within the first recess 132, between the coupling part 13 and the guiding tube 4 and outside the nozzle plate 22 in the radial direction, as shown in FIG. 1 for example.
  • the electrode assembly includes two electrodes for example.
  • the electrodes E are electrically connected to the piezoelectric element 21 and drive the nozzle plate 22 to oscillate. Therefore, in order to prevent a short circuit of the electrode assembly E, the waterproof structure of this region is also strengthened in this embodiment.
  • the first waterproof gasket 3 further includes a coupling ring 34, which is disposed around an outer side of the second opening 32. That is, the diameter of the coupling ring 34 is greater than that of the second opening 32.
  • the outlet 121, the nozzle plate 22, the first opening 31, the second opening 32, the annular wall structure 33, the coupling ring 34 have a common axis along the axial direction Z. The thickness of the coupling ring 34 along the axial direction Z is greater than the distance between the first opening 31 and the second opening 32.
  • the first waterproof gasket 3 can avoid the leakage of the liquid medicament by the tight abutments of the coupling ring 34 between the nebulizing unit 2 and the guiding tube 4, and also prevent the liquid medicament from permeating into the region where the electrode assembly E is disposed to avoid the short circuit of the electrode assembly E.
  • the nebulizing device N further includes a third waterproof gasket 6, which is disposed between the nebulizing unit 2 and the outlet 121 so as to prevent the liquid medicament from permeating into the region where the electrode E is disposed through the gap between the nebulizing unit 2 and the outlet 121 to avoid the short circuit of the electrode E.
  • the third waterproof gasket 6 and the first waterproof gasket 3 form a hermetic space AS at one end of the first recess 132.
  • the hermetic space AS may be the region where the electrode assembly E is disposed.
  • the coupling part 13 includes an annular groove G which is disposed on a terminal of the extension wall 131 and faces a sidewall of the connection portion 41 of the guiding tube 4. Additionally, a central axis of the annular groove G is coaxial with that of the extension wall 131. To be noted, the annular groove G can have a circular shape or other ring-like shapes.
  • the nebulizing device N further includes a second waterproof gasket 5 which is partially disposed within the annular groove G and extended outwards to partially cover the sidewall of the connection portion 41 of the guiding tube 4. Moreover, the second waterproof gasket 5 is also extended along a sidewall 131a of the terminal of the extension wall 131 and.
  • the section of the second waterproof gasket 5 can have a mushroom shape as shown in FIG. 2 . Therefore, by the disposition of the second waterproof gasket 5, the external liquid (coming from the washing for example) can be prevented from permeating into the region where the electrode E is located through the gap between the guiding tube 4 and the coupling part 13 to avoid the short circuit of the electrode assembly E.
  • the storage module 1 further includes an upper cover 14, which can be pivotally connected to the tubular sidewall 12 to seal the upper opening O of the accommodating recess A.
  • the tubular sidewall 12 further includes a first pivotal portion 122
  • the upper cover 14 includes at least a second pivotal portion 141.
  • the storage module 1 further includes a shaft S passing through the first pivotal portion 122 and the second pivotal portion 141, so that the upper cover 14 can be pivotally connected to the tubular sidewall 12.
  • the first pivotal portion 122 and the tubular sidewall 12 are integrally formed.
  • a nebulizer M is further provided.
  • the nebulizer M includes a nebulizing device N and a nebulization driving device D. Because the nebulizing device N has been clearly illustrated in the above embodiments, the illustration thereof is omitted here for conciseness.
  • the nebulization driving device D connects to and drives the nebulizing unit 2 of the nebulizing device N to spray the nebulized drops.
  • the nebulization driving device D is detachably coupled with the storage module 1 of the nebulizing device N.
  • the nebulization driving device D can contain a power unit to provide the required power for the operation of the nebulizing device N.
  • the nebulization driving device D can contain a control board to control the operation of the nebulizing device N.
  • the size of the second opening of the first waterproof gasket is greater than that of the first opening, so that the annular wall structure is extended from the first opening toward the second opening to form a non-horizontal surface. Therefore, even if the nebulized drops are condensed into water drops after being sprayed out of the nozzle plate, the water drops will flow to the outside of the second opening instead of becoming standing water at the annular wall structure.
  • the nebulizing unit will not be soaked in the standing water containing the medicament for a long time, and the nebulizing unit may be oxidized or eroded by the medicament as little as possible so the lifespan of the nebulizing unit can be extended.

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  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Anesthesiology (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Hematology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Special Spraying Apparatus (AREA)

Claims (15)

  1. Dispositif de nébulisation, comprenant :
    un module de stockage (1), comprenant :
    une paroi inférieure (11) ;
    une paroi latérale tubulaire (12) raccordée à la circonférence de la paroi inférieure (11), la paroi latérale tubulaire (12) et la paroi inférieure (11) formant un logement de réception (A) doté d'une ouverture supérieure (O) destinée à recevoir un liquide, la paroi latérale tubulaire (12) comprenant une sortie (121), et la paroi inférieure (11) s'étendant jusqu'à la sortie (121) ; et
    une partie d'accouplement (13) reliée à une surface extérieure de la paroi latérale tubulaire (12) et en alignement avec la sortie (121), et comprenant une paroi d'extension (131) et un premier logement (132) ;
    une unité de nébulisation (2) disposée dans le premier logement (132) pour transformer le liquide délivré par la sortie (121) en une pluralité de gouttes nébulisées ; et
    un premier joint étanche à l'eau (3) disposé dans le premier logement (132) et situé sur un côté de l'unité de nébulisation (2) plus éloigné de la sortie (121), comprenant :
    une première ouverture (31) disposée de manière adjacente à l'unité de nébulisation (2) ;
    une seconde ouverture (32) disposée à l'opposé de la première ouverture (31) et à distance de l'unité de nébulisation (2) ; et
    une structure de paroi annulaire (33) raccordée à la première ouverture (31) et à la seconde ouverture (32) du premier joint étanche à l'eau (3) et s'étendant à partir de la première ouverture (31) vers la seconde ouverture (32),
    caractérisé en ce que
    la seconde ouverture (32) a une dimension supérieure à celle de la première ouverture (31), et
    dans lequel un diamètre intérieur de la structure de paroi annulaire (33) augmente progressivement de la première ouverture (31) à la seconde ouverture (32).
  2. Dispositif de nébulisation selon la revendication 1, dans lequel la structure de paroi annulaire (33) s'étendant à partir de la première ouverture (31) vers la seconde ouverture (32) forme une surface non horizontale.
  3. Dispositif de nébulisation selon la revendication 1, dans lequel la structure de paroi annulaire (33) a une surface concave, une surface plane, une surface dentelée ou une surface en échelle.
  4. Dispositif de nébulisation selon la revendication 1, dans lequel l'unité de nébulisation (2) comprend un élément piézoélectrique (21) et une plaque à buses (22), l'élément piézoélectrique (21) est disposé autour de la plaque à buses (22) et le premier joint étanche à l'eau (3) vient hermétiquement en butée contre l'élément piézoélectrique (21).
  5. Dispositif de nébulisation selon la revendication 4, comprenant, en outre, un tube de guidage (4) couplé de manière amovible à la partie d'accouplement (13) du module de stockage (1).
  6. Dispositif de nébulisation selon la revendication 5, dans lequel le tube de guidage (4) comprend une partie de raccordement (41), une ouverture (42) et une partie tubulaire (43), la partie de raccordement (41) étant couplée à la paroi d'extension (131) de la partie d'accouplement (13), l'ouverture (42) étant disposée de manière correspondante au niveau de ou en alignement avec la plaque à buses (22), et le tube de guidage (4) guidant la pluralité de gouttes nébulisées diffusées par l'unité de nébulisation (2).
  7. Dispositif de nébulisation selon la revendication 5, dans lequel la partie d'accouplement (13) comprend, en outre, une rainure annulaire (G) disposée sur la paroi d'extension (131) de la partie d'accouplement (13) et faisant face à une surface d'extrémité du tube de guidage (4).
  8. Dispositif de nébulisation selon la revendication 7, comprenant, en outre, un second joint étanche à l'eau (5) disposé en partie à l'intérieur de la rainure annulaire (G) et s'étendant en partie vers l'extérieur pour couvrir la surface d'extrémité du tube de guidage (4).
  9. Dispositif de nébulisation selon la revendication 1, comprenant, en outre, un troisième joint étanche à l'eau (6), le troisième joint étanche à l'eau (6) et le premier joint étanche à l'eau (3) formant un espace hermétique (AS) à une extrémité du premier logement (132).
  10. Nébuliseur, comprenant :
    un dispositif de nébulisation selon la revendication 1 ; et
    un dispositif d'entraînement de nébulisation (D) se raccordant à et entraînant l'unité de nébulisation (2) pour diffuser les gouttes nébulisées.
  11. Nébuliseur selon la revendication 10, dans lequel la structure de paroi annulaire (33) s'étendant à partir de la première ouverture (31) vers la seconde ouverture (32) forme une surface non horizontale.
  12. Nébuliseur selon la revendication 10, dans lequel l'unité de nébulisation (2) comprend un élément piézoélectrique (21) et une plaque à buses (22), l'élément piézoélectrique (21) est disposé autour de la plaque à buses (22), et le premier joint étanche à l'eau (3) vient hermétiquement en butée contre l'élément piézoélectrique (21).
  13. Nébuliseur selon la revendication 12, dans lequel le dispositif de nébulisation comprend, en outre :
    un tube de guidage (4) couplé de manière amovible à la partie d'accouplement (13), la partie d'accouplement étant pourvue d'une rainure annulaire (G) qui fait face au tube de guidage (4) ; et
    un second joint étanche à l'eau (5) qui est disposé à l'intérieur de la rainure annulaire (G) et s'étend vers l'extérieur pour couvrir la surface d'extrémité du tube de guidage (4).
  14. Nébuliseur selon la revendication 10, dans lequel le dispositif de nébulisation comprend, en outre, un troisième joint étanche à l'eau (6), le troisième joint étanche à l'eau (6) et le premier joint étanche à l'eau (3) formant un espace hermétique (AS) recevant une électrode (E) à une extrémité du premier logement (132).
  15. Nébuliseur selon la revendication 10, dans lequel le premier joint étanche à l'eau (3) comprend, en outre, une bague d'accouplement (34) ayant une épaisseur supérieure à une distance entre la première ouverture (31) et la seconde ouverture (32).
EP16163291.4A 2015-06-11 2016-03-31 Dispositif de nébulisation et nébuliseur Active EP3103497B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US201562174144P 2015-06-11 2015-06-11
TW104219725U TWM536948U (zh) 2015-06-11 2015-12-09 微霧化裝置及微霧化器

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EP3103497A1 EP3103497A1 (fr) 2016-12-14
EP3103497B1 true EP3103497B1 (fr) 2019-04-24

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CN107638616A (zh) * 2017-11-09 2018-01-30 广州畅呼医疗器械有限公司 一种压电式雾化器
CN107670155A (zh) * 2017-11-10 2018-02-09 英路维(宁波)健康科技有限公司 一种便携式雾化呼吸仪

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US6328718B1 (en) * 2000-04-29 2001-12-11 Chien-Li Chen Snivel sucker
DE10257381B4 (de) * 2002-12-09 2006-09-14 Pari GmbH Spezialisten für effektive Inhalation Inhalationstherapievorrichtung
DE102005006375B4 (de) * 2005-02-11 2007-10-11 Pari GmbH Spezialisten für effektive Inhalation Aerosolerzeugungsvorrichtung für Inhalationstherapiegeräte
TWI539978B (zh) * 2013-09-13 2016-07-01 台達電子工業股份有限公司 微霧化裝置及其給藥室模組
US9895500B2 (en) * 2014-07-24 2018-02-20 Hcmed Innovations Co., Ltd. Portable ultrasonic nebulizer and medicine accommodating structure thereof

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